Computer-assisted shoulder surgery and method
A humerus cutting assembly includes a guide frame having an attachment member adapted to be secured to a humerus adjacent to a humeral head. A cutting guide is releasably connected to the guide frame, the cutting guide configured to guide a tool in altering the humeral head. One or more inertial sensor units is on the cutting guide, the inertial sensor unit tracking an orientation of the cutting guide relative to the humerus based on the releasable connection between the cutting guide and the guide frame.
1. A humerus cutting assembly comprising:
a guide frame having an attachment member adapted to be secured to a humerus adjacent to a humeral head, and
a cutting guide releasably connected to the guide frame, the cutting guide configured to guide a tool in altering the humeral head;
at least one inertial sensor unit on the cutting guide, the inertial sensor unit tracking an orientation of the cutting guide relative to the humerus based on a releasable connection between the cutting guide and the guide frame.
2. The humerus cutting assembly according to claim 1 , wherein the attachment member includes a plate configured to be applied against the humerus.
3. The humerus cutting assembly according to claim 2 , wherein the attachment member includes at least one fastener to secure the plate to the humerus.
4. The humerus cutting assembly according to claim 2 , wherein the plate includes at least one patient-specific surface being a negative of a corresponding surface of the humerus.
5. The humerus cutting assembly according to claim 1 , wherein the guide frame has an elongated arm configured to be connected to a portion of an arm of the humerus, away from the humerus.
6. The humerus cutting assembly according to claim 5 , including a clamp at an end of the elongated arm configured to be connected to the portion of the arm of the humerus.
7. The humerus cutting assembly according to claim 6 , wherein the clamp has biased jaws.
8. The humerus cutting assembly according to claim 5 , wherein the elongated arm defines a joint with at least one translational degree of freedom.
9. The humerus cutting assembly according to claim 8 , wherein the joint with at least one translational degree of freedom is a lockable telescopic joint.
10. The humerus cutting assembly according to claim 5 , including a support for the at least one inertial sensor unit on the elongated arm.
11. The humerus cutting assembly according to claim 5 , including a side arm projecting from the elongated arm, the plate being at an end of the side arm.
12. The humerus cutting assembly according to claim 11 , wherein the side arm defines a side-arm joint with at least one translational degree of freedom.
13. The humerus cutting assembly according to claim 12 , wherein the side-arm joint with at least one translational degree of freedom is a lockable telescopic joint.
14. The humerus cutting assembly according to claim 1 , including a support for releasably receiving the at least one inertial sensor unit on the cutting guide.
15. The humerus cutting assembly according to claim 14 , wherein the support is on an arm projecting from a remainder of the cutting guide, a coupler being at an end of the arm.
16. The humerus cutting assembly according to claim 1 , wherein the cutting guide has at least one cut slot, and holes for receiving fasteners to secure the cutting guide to the humerus.
17. The humerus cutting assembly according to claim 1 , wherein the releasable connection is a male-female coupling between the guide frame and the cutting guide, the male-female coupling defining a unique coupling orientation.